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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Measurement of collisions between rubidium atoms and optically dark rubidium ions in trapped mixtures
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Measurement of collisions between rubidium atoms and optically dark rubidium ions in trapped mixtures

机译:测量被困混合物中atoms原子与光学上暗dark离子之间的碰撞

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摘要

We measure the collision-rate coefficient between laser-cooled rubidium (Rb) atoms in a magneto-optical trap (MOT) and optically dark Rb~+ ions in an overlapping Paul trap. In such a mixture, the ions are created from the MOT atoms and allowed to accumulate in the ion trap, which results in a significant reduction in the number of steady-state MOT atoms. A theoretical rate-equation model is developed to describe the evolution of the MOT atom number due to ionization and ion-atom collisions, and we derive an expression for the ion-atom collision-rate coefficient. The loss of MOT atoms is studied systematically by sequentially switching on the various mechanisms in the experiment. Combining the measurements with the model allows the direct determination of the ion-atom collision-rate coefficient. Finally, the scope of the experimental technique developed here is discussed.
机译:我们测量了磁光阱(MOT)中的激光冷却的R原子与重叠的Paul阱中的暗Rb +离子之间的碰撞速率系数。在这样的混合物中,离子是由MOT原子产生的,并使其积累在离子阱中,这导致稳态MOT原子数的显着减少。建立了理论速率方程模型来描述由于电离和离子-原子碰撞引起的MOT原子数的演化,并推导了离子-原子碰撞率系数的表达式。通过依次开启实验中的各种机制,系统地研究了MOT原子的损失。将测量值与模型结合在一起可以直接确定离子-原子碰撞速率系数。最后,讨论了这里开发的实验技术的范围。

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